The expression profile analysis of NKX2-5 knock-out embryonic mice to explore the pathogenesis of congenital heart disease

J Cardiol. 2015 Dec;66(6):527-31. doi: 10.1016/j.jjcc.2014.12.022. Epub 2015 Mar 24.

Abstract

Background: Mutation of NKX2-5 could lead to the development of congenital heart disease (CHD) which is a common inherited disease. This study aimed to investigate the pathogenesis of CHD in NKX2-5 knock-out embryonic mice.

Methods: The expression profile in the NKX2-5 knock-out embryonic mice (GSE528) was downloaded from Gene Expression Omnibus. The heart tissues from the null/heterozygous embryonic day 12.5 mice were compared with wild-type mice to identify differentially expressed genes (DEGs), and then DEGs corresponding to the transcriptional factors were filtered out based on the information in the TRANSFAC database. In addition, a transcriptional regulatory network was constructed according to transcription factor binding site information from the University of California Santa Cruz database. A pathway interaction network was constructed by latent pathways identification analysis.

Results: The 42 DEGs corresponding to transcriptional factors from the null and heterozygous embryos were identified. The transcriptional regulatory networks included five down-regulated DEGs (SP1, SRY, JUND, STAT6, and GATA6), and six up-regulated DEGs [POU2F1, NFY (NFYA/NFYB/NFYC), USF2 and MAX]. Latent pathways analysis demonstrated that ribosome, glycolysis/gluconeogenesis, and dilated cardiomyopathy pathways significantly interacted.

Conclusion: The identified DEGs and latent pathways could provide new comprehensive view for understanding the pathogenesis of CHD.

Keywords: Congenital heart disease; Differentially expressed genes; Embryonic mice; Latent pathways; Regulation factors.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Down-Regulation
  • Gene Expression
  • Gene Expression Profiling*
  • Gene Regulatory Networks / genetics*
  • Heart Defects, Congenital / genetics*
  • Homeobox Protein Nkx-2.5
  • Homeodomain Proteins*
  • Mice
  • Mice, Knockout
  • Transcription Factors / metabolism*
  • Up-Regulation

Substances

  • Homeobox Protein Nkx-2.5
  • Homeodomain Proteins
  • Nkx2-5 protein, mouse
  • Transcription Factors